Nuclear-magnetic-resonance interaction mechanism in Rb2CoCl4 single crystals with the electric magnetic type
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1988968
Reference36 articles.
1. Nonlinear optical properties ofRb2ZnCl4in the incommensurate and ferroelectric phases
2. New ferroelectrics of the (NH4)2SO4type
3. Dielectric Evidence for Low Temperature Phase Transitions in Ferroelectric Rb2CoCl4and Rb2CoBr4Crystals
4. Room-temperature phase transition in Rb2CoCl4. heat capacity measurements
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2. Chemical shift and spin–lattice relaxation time for two crystallographically inequivalent 133 Cs sites in Cs 2 B Br 4 ( B = 57 Co, 63 Cu, and 65 Zn) using magic-angle spinning nuclear magnetic resonance;Solid State Sciences;2017-05
3. 87Rb spin-lattice relaxation times in ferroelectric-paraelectric-incommensurate phases of Rb2CoBr4 using static NMR and MAS NMR;Journal of Molecular Structure;2017-04
4. Photopyroelectric Calorimetry of $$\hbox {Fe}_{3}\hbox {O}_{4}$$ Fe 3 O 4 Magnetic Nanofluids: Effect of Type of Surfactant and Magnetic Field;International Journal of Thermophysics;2013-12-18
5. Study of the molecular dynamics and phase transitions of (, Rb, and Cs) single crystals;Solid State Communications;2011-11
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